934 resultados para GEL MATRIX
Resumo:
Nutritional substances associated to some hormones enhance liver regeneration when injected intraperitoneally, being denominated hepatotrophic factors (HF). Here we verified if a solution of HF (glucose, vitamins, salts, amino acids, glucagon, insulin, and triiodothyronine) can revert liver cirrhosis and how some extracellular matrices are affected. Cirrhosis was induced for 14 weeks in 45 female Wistar rats (200 mg) by intraperitoneal injections of thioacetamide (200 mg/kg). Twenty-five rats received intraperitoneal HF twice a day for 10 days (40 mL·kg-1·day-1) and 20 rats received physiological saline. Fifteen rats were used as control. The HF applied to cirrhotic rats significantly: a) reduced the relative mRNA expression of the genes: Col-α1 (-53%), TIMP-1 (-31.7%), TGF-β1 (-57.7%), and MMP-2 (-41.6%), whereas Plau mRNA remained unchanged; b) reduced GGT (-43.1%), ALT (-17.6%), and AST (-12.2%) serum levels; c) increased liver weight (11.3%), and reduced liver collagen (-37.1%), regenerative nodules size (-22.1%), and fibrous septum thickness. Progranulin protein (immunohistochemistry) and mRNA (in situ hybridization) were found in fibrous septa and areas of bile duct proliferation in cirrhotic livers. Concluding, HF improved the histology and serum biochemistry of liver cirrhosis, with an important reduction of interstitial collagen and increased extracelullar matrix degradation by reducing profibrotic gene expression.
Resumo:
During the process of endochondral bone formation, chondrocytes and osteoblasts mineralize their extracellular matrix by promoting the formation of hydroxyapatite (HA) seed crystals in the sheltered interior of membrane-limited matrix vesicles (MVs). Ion transporters control the availability of phosphate and calcium needed for HA deposition. The lipidic microenvironment in which MV-associated enzymes and transporters function plays a crucial physiological role and must be taken into account when attempting to elucidate their interplay during the initiation of biomineralization. In this short mini-review, we discuss the potential use of proteoliposome systems as chondrocyte- and osteoblast-derived MVs biomimetics, as a means of reconstituting a phospholipid microenvironment in a manner that recapitulates the native functional MV microenvironment. Such a system can be used to elucidate the interplay of MV enzymes during catalysis of biomineralization substrates and in modulating in vitro calcification. As such, the enzymatic defects associated with disease-causing mutations in MV enzymes could be studied in an artificial vesicular environment that better mimics their in vivo biological milieu. These artificial systems could also be used for the screening of small molecule compounds able to modulate the activity of MV enzymes for potential therapeutic uses. Such a nanovesicular system could also prove useful for the repair/treatment of craniofacial and other skeletal defects and to facilitate the mineralization of titanium-based tooth implants.
Resumo:
The incidence of superficial or deep-seated infections due to Candida glabrata has increased markedly, probably because of the low intrinsic susceptibility of this microorganism to azole antifungals and its relatively high propensity to acquire azole resistance. To determine changes in the C. glabrata proteome associated with petite mutations, cytosolic extracts from an azole-resistant petite mutant of C. glabrata induced by exposure to ethidium bromide, and from its azole-susceptible parent isolate were compared by two-dimensional polyacrylamide gel electrophoresis. Proteins of interest were identified by peptide mass fingerprinting or sequence tagging using a matrix-assisted laser desorption/ionization tandem time-of-flight mass spectrometer. Tryptic peptides from a total of 160 Coomassie-positive spots were analyzed for each strain. Sixty-five different proteins were identified in the cytosolic extracts of the parent strain and 58 in the petite mutant. Among the proteins identified, 10 were higher in the mutant strain, whereas 23 were lower compared to the parent strain. The results revealed a significant decrease in the enzymes associated with the metabolic rate of mutant cells such as aconitase, transaldolase, and pyruvate kinase, and changes in the levels of specific heat shock proteins. Moreover, transketolase, aconitase and catalase activity measurements decreased significantly in the ethidium bromide-induced petite mutant. These data may be useful for designing experiments to obtain a better understanding of the nuclear response to impairment of mitochondrial function associated with this mutation in C. glabrata.
Resumo:
Angiotensin II (ANG II), the main effector of the renin-angiotensin system, is implicated in endothelial permeability, recruitment and activation of the immune cells, and also vascular remodeling through induction of inflammatory genes. Matrix metalloproteinases (MMPs) are considered to be important inflammatory factors. Elucidation of ANG II signaling pathways and of possible cross-talks between their components is essential for the development of efficient inhibitory medications. The current study investigates the inflammatory signaling pathways activated by ANG II in cultures of human monocytic U-937 cells, and the effects of specific pharmacological inhibitors of signaling intermediates on MMP-9 gene (MMP-9) expression and activity. MMP-9 expression was determined by real-time PCR and supernatants were analyzed for MMP-9 activity by ELISA and zymography methods. A multi-target ELISA kit was employed to evaluate IκB, NF-κB, JNK, p38, and STAT3 activation following treatments. Stimulation with ANG II (100 nM) significantly increased MMP-9 expression and activity, and also activated NF-κB, JNK, and p38 by 3.8-, 2.8- and 2.2-fold, respectively (P < 0.01). ANG II-induced MMP-9 expression was significantly reduced by 75 and 67%, respectively, by co-incubation of the cells with a selective inhibitor of protein kinase C (GF109203X, 5 µM) or of rho kinase (Y-27632, 15 µM), but not with inhibitors of phosphoinositide 3-kinase (wortmannin, 200 nM), tyrosine kinases (genistein, 100 µM) or of reactive oxygen species (α-tocopherol, 100 µM). Thus, protein kinase C and Rho kinase are important components of the inflammatory signaling pathways activated by ANG II to increase MMP-9 expression in monocytic cells. Both signaling molecules may constitute potential targets for effective management of inflammation.
Resumo:
Chondrocytes and bone marrow mesenchymal stem cells (BMSCs) are frequently used as seed cells in cartilage tissue engineering. In the present study, we determined if the co-culture of rabbit articular chondrocytes and BMSCs in vitro promotes the expression of cartilaginous extracellular matrix and, if so, what is the optimal ratio of the two cell types. Cultures of rabbit articular chondrocytes and BMSCs were expanded in vitro and then cultured individually or at a chondrocyte:BMSC ratio of 4:1, 2:1, 1:1, 1:2, 1:4 for 21 days and cultured in DMEM/F12. BMSCs were cultured in chondrogenic induction medium. Quantitative real-time RT-PCR and Western blot were used to evaluate gene expression. In the co-cultures, type II collagen and aggrecan expression increased on days 14 and 21. At the mRNA level, the expression of type II collagen and aggrecan on day 21 was much higher in the 4:1, 2:1, and 1:1 groups than in either the articular chondrocyte group or the induced BMSC group, and the best ratio of co-culture groups seems to be 2:1. Also on day 21, the expression of type II collagen and aggrecan proteins in the 2:1 group was much higher than in all other groups. The results demonstrate that the co-culture of rabbit chondrocytes and rabbit BMSCs at defined ratios can promote the expression of cartilaginous extracellular matrix. The optimal cell ratio appears to be 2:1 (chondrocytes:BMSCs). This approach has potential applications in cartilage tissue engineering since it provides a protocol for maintaining and promoting seed-cell differentiation and function.
Resumo:
Among the most common features of highly invasive tumors, such as lung adenocarcinomas (AD) and squamous cell carcinomas (SqCC), is the massive degradation of the extracellular matrix. The remarkable qualitative and quantitative modifications of hyaluronidases (HAases), hyaluronan synthases (HAS), E-cadherin adhesion molecules, and the transforming growth factor β (TGF-β) may favor invasion, cellular motility, and proliferation. We examined HAase proteins (Hyal), HAS, E-cadherin, and TGF-β profiles in lung AD subtypes and SqCC obtained from smokers and non-smokers. Fifty-six patients, median age 64 years, who underwent lobectomy for AD (N = 31) and SqCC (N = 25) were included in the study. HAS-1, -2 and -3, and Hyal-1 and -3 were significantly more expressed by tumor cells than normal and stroma cells (P < 0.01). When stratified according to histologic types, HAS-3 and Hyal-1 immunoreactivity was significantly increased in tumor cells of AD (P = 0.01) and stroma of SqCC (P = 0.002), respectively. Tobacco history in patients with AD was significantly associated with increased HAS-3 immunoreactivity in tumor cells (P < 0.01). Stroma cells of SqCC from non-smokers presented a significant association with HAS-3 (P < 0.01). Hyal, HAS, E-cadherin, and TGF-β modulate a different tumor-induced invasive pathway in lung AD subgroups and SqCC. HAases in resected AD and SqCC were strongly related to the prognosis. Therefore, our findings suggest that strategies aimed at preventing high HAS-3 and Hyal-1 synthesis, or local responses to low TGF-β and E-cadherin, may have a greater impact in lung cancer prognosis.
Resumo:
Damage to cartilage causes a loss of type II collagen (Col-II) and glycosaminoglycans (GAG). To restore the original cartilage architecture, cell factors that stimulate Col-II and GAG production are needed. Insulin-like growth factor I (IGF-I) and transcription factor SOX9are essential for the synthesis of cartilage matrix, chondrocyte proliferation, and phenotype maintenance. We evaluated the combined effect of IGF-I and SOX9 transgene expression on Col-II and GAG production by cultured human articular chondrocytes. Transient transfection and cotransfection were performed using two mammalian expression plasmids (pCMV-SPORT6), one for each transgene. At day 9 post-transfection, the chondrocytes that were over-expressing IGF-I/SOX9 showed 2-fold increased mRNA expression of the Col-II gene, as well as a 57% increase in Col-II protein, whereas type I collagen expression (Col-I) was decreased by 59.3% compared with controls. The production of GAG by these cells increased significantly compared with the controls at day 9 (3.3- vs 1.8-times, an increase of almost 83%). Thus, IGF-I/SOX9 cotransfected chondrocytes may be useful for cell-based articular cartilage therapies.
Resumo:
O presente trabalho compara processos de purificação de enterotoxina estafilocócica A, utilizando cromatografia de afinidade com corante Red A em relação a troca iônica (SP - Sephadex C-25) - permeabilidade em gel (Sephadex G-75). Aplicou-se nas colunas o sobrenadante da cultura de Staphylococcus aureus 722 em caldo contendo 3% de triptona e suplementado com 1% de extrato de levedura, previamente concentradas com Amberlite CG-50. O processo capturou rapidamente a EEA, porém a proporção de 15 mg de resina para 150 mg de toxina causou saturação, recuperando apenas 10 a 30% de toxina do sobrenadante. A cromatografia de afinidade com Red A permitiu a recuperação de 60,87% de toxina aplicada em 76 horas, em relação a 114 horas requeridas para purificação utilizando coluna de troca iônica e permeabilidade em gel, com rendimento de 6,5%. O perfil eletroforético das amostras purificadas indicaram que, a toxina obtida da coluna Red A apresentou teor de pureza superior, na ordem de 90%, em relação a 60% atingida pelo método clássico.
Resumo:
Testou-se a utilização do CO2 supercrítico na extração seletiva de compostos oxigenados (linalol e acetato de linalila) contidos no óleo essencial de bergamota (Citrus bergamia Risso), var. bergamia, adsorvido em sílica gel contendo baixo teor de limoneno e bergapteno. A densidade do dióxido de carbono e a temperatura de extração foram otimizadas, e os extratos obtidos foram analisados por cromatografia. Nas condições estudadas, observou-se uma redução de 72% no teor de limoneno e 92,5% para o bergapteno, sendo extraídos 52% de linalol e 69,4% de acetato de linalila.
Resumo:
O presente trabalho tem como objetivo determinar a influência das interações das gomas xantana e guar com o amido de milho de alto teor de amilose na textura de gel durante o armazenamento. Foram utilizadas amostras de amido milho Hylon VII® (71% de amilose, National Starch, goma guar (Higum 55I®, Rhodia) e goma xantana (Rhodigel 200®, Rhodia). Foram utilizadas diferentes concentrações das gomas guar e xantana, que variaram de 0 a 1%, de acordo com o delineamento experimental central composto rotacional. Em cada tratamento foram utilizadas 50g de amido com alto teor de amilose (Hylon VII), adicionadas das gomas. Estas amostras foram diluídas em água destilada e submetidas à agitação mecânica até completa dissolução. As soluções foram aquecidas até 95°C por 5 minutos para formação dos géis, os quais foram acondicionados em recipientes plásticos de 50mL e mantidos em temperatura de 5-10°C até 120h. Nos tempos T1 (24h), T2 (48h), T3 (72h), T4 (96h) e T5 (120h) de armazenamento foram feitas medidas da força máxima do gel de amilose em texturômetro (Stable Micro-System, Modelo TAX-T2). No período inicial, de 24 horas, a goma guar não apresentou influência positiva na redução da força do gel, sendo que a aplicação de goma xantana entre 0,7 e 1,0% apresentou os menores valores de força do gel de amilose. Após 120h de armazenamento, a força do gel de amilose diminuiu com a adição de 0,5-1,0% de goma xantana e 0-0,15% de goma guar.
Resumo:
Este trabalho objetivou a otimização da imobilização das enzimas amilases extraídas do malte do milho, usando alginato de sódio. A concentração do malte no extrato, a porcentagem de alginato de sódio e o pH foram usados como fatores que influenciam na imobilização das enzimas. Os resultados mostraram que as melhores condições de imobilização foram obtidas quando se usou as soluções de malte de milho em duas faixas de concentrações, uma entre 3,75 a 5 g.L-1 e outra entre 15 a 16,25 g.L-1, em pH entre 4,83 a 6,6 e 4% (m/v) de alginato de sódio, condições nas quais se conseguiu imobilizar 100% das enzimas com baixa perda de atividade. Este trabalho mostrou como se obter amilases de malte de milho imobilizadas por oclusão em alginato de sódio e que podem ser usadas em processos industriais de hidrólise de amido.
Resumo:
Dentre os processos que precedem a conservação em longo prazo, a secagem tem papel fundamental, uma vez que o conteúdo de água das sementes afeta diretamente a sua longevidade. Os objetivos desse trabalho foram pesquisar o efeito da umidificação prévia das sementes após ultrassecagem em diferentes teores de água sobre a qualidade fisiológica de sementes de girassol. Sementes com conteúdo inicial de água de 4,7% foram embebidas previamente até conteúdo de água de 10,2%, e submetidas à secagem lenta, conduzida em câmara de secagem, e à secagem rápida, em sílica gel, até conteúdos de água de 7,4; 3,2; 2,9% e 5,3; 3,2; 2,1%, respectivamente. Após a secagem rápida ou lenta, as sementes foram submetidas ou não à umidificação em caixas tipo "gerbox" até o teor de água de 15,8 a 17% e então avaliadas quanto à germinação, peso da matéria seca de raiz, parte aérea e total das plântulas e teste de condutividade elétrica. O delineamento experimental foi o inteiramente casualizado em esquema fatorial 5 (teores de água) x 2 (com e sem umidificação). Quando utilizado a secagem rápida, a germinação das sementes não é prejudicada, e a secagem lenta, até conteúdo de água de 2,9%, proporciona uma redução na germinação das sementes. Sementes de girassol podem ser desidratadas tanto em sílica gel quanto em câmara de secagem até teores de água de 3,2%, sem perda de germinação e vigor. O tratamento de umidificação após secagem propicia um melhor desenvolvimento de raiz e menores valores de condutividade elétrica nas sementes desidratadas em sílica gel e em câmara de secagem.
Resumo:
The central role of extracellular matrix (ECM) macromolecules in diseases such as cancer and atherosclerotic vascular diseases including diabetic macroangiopathy is indisputable. Decorin and hyaluronan (HA) represent vital ECM macromolecules in the microenvironment of cells and are centrally involved in human cancer and cardiovascular biology. In cancer, decorin is considered to play a tumor suppressive role. However, there is some discrepancy whether malignant cells express it. Regarding HA, its contribution to the development of atherosclerotic vascular diseases has been well established. Nevertheless, the precise role of HA in arterial narrowing associated with diabetes is not known. The present study focused on two vital ECM macromolecules, namely decorin and HA. First, decorin expression was studied in human tumorigenesis. Furthermore, the effect of adenovirus-mediated decorin transduction on selected cancer cell lines was investigated. The results invariably showed that cancer cells completely lacked decorin expression. The study also demonstrated that transducing cancer cells with decorin adenoviral vector markedly inhibited their malignant behavior. In line with this, a strong induction of decorin expression in normal human embryonic stem cells (hESCs), but not in abnormal hESCs was observed during their differentiation. Secondly, the significance of HA in the development of diabetic macroangiopathy in response to hyperglycemia was evaluated. Results showed that the synthesis of HA by vascular smooth muscle cells was significantly increased in response to high glucose concentration. This increase was associated with the diminished ability of the cells to contract collagen-rich matrix suggesting that HA participates in the disturbed vascular remodeling of diabetic patients. The results of this study support endeavours to develop novel ECM macromolecule -based therapies targeting cancer and cardiovascular diseases.